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121.
为探讨NAC转录因子在梨缺铁黄化叶复绿过程中的表达特性,并筛选响应该过程的核心NAC因子,以清水处理正常梨树叶片(N)和黄化梨树叶片(C)为对照(CN和CC),再次探讨了外源0.2% FeSO4溶液对梨缺铁黄化叶复绿和Fe2+积累的影响,研究了其关键PbrNAC基因的生物学性质,组织表达特异性以及复绿过程中的表达模式,并阐述了其与叶内Fe2+积累的关联性。其结果表明,(1)于N和C内共鉴定到含NAM结构域的21个显著差异表达的PbrNAC基因,涉及8个亚族,其长度不均,motif数从4到9不等,内含子数较少。(2)该基因倾向于根中表达,且均可响应缺铁黄化叶的复绿,其中Pbr032231.1/Pbr021393.1/Pbr026635.1/Pbr038615.1/Pbr019210.3/Pbr019212.1/Pbr002372.1这7个基因在CC内的表达量显著低于CN内表达量,且FeSO4处理后,其各时期表达量均较CC显著上调;与之相反,Pbr007284.1/Pbr016205.1/Pbr007673.1等14个PbrNAC基因均在CC内显著高表达,而FeSO4处理后,其各时期表达量总体较CC显著下降。(3)各叶样内Fe2+含量与Pbr007284.1/Pbr016205.1/Pbr007673.1基因的表达量呈显著负相关,且该3个基因的表达与Pbr016932.1/Pbr027956.1/Pbr029956.1/Pbr026635.1等基因的表达显著相关。(4)多数PbrNAC在正常梨树根系和黄化梨树根系中的表达趋势与其在CN和CC内的表达趋势基本一致,说明其在地下部根系与地上部叶内可能存在表达协同性。以上结果表明,梨PbrNAC基因可能与梨树缺铁胁迫响应和缺铁黄化叶的复绿相关,其中Pbr007284.1/Pbr016205.1/Pbr007673.1可能起重要调控作用。 相似文献
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123.
Barindra Sana Ke Ding Jia Wei Siau Rupali Reddy Pasula Sharon Chee Sharad Kharel Jean-Baptise Henri Lena Eunice Goh Lakshminarayanan Rajamani Yeng Ming Lam Sierin Lim John F. Ghadessy 《Biotechnology and bioengineering》2023,120(11):3200-3209
Polyethylene terephthalate (PET) hydrolase enzymes show promise for enzymatic PET degradation and green recycling of single-use PET vessels representing a major source of global pollution. Their full potential can be unlocked with enzyme engineering to render activities on recalcitrant PET substrates commensurate with cost-effective recycling at scale. Thermostability is a highly desirable property in industrial enzymes, often imparting increased robustness and significantly reducing quantities required. To date, most engineered PET hydrolases show improved thermostability over their parental enzymes. Here, we report engineered thermostable variants of Ideonella sakaiensis PET hydrolase enzyme (IsPETase) developed using two scaffolding strategies. The first employed SpyCatcher-SpyTag technology to covalently cyclize IsPETase, resulting in increased thermostability that was concomitant with reduced turnover of PET substrates compared to native IsPETase. The second approach using a GFP-nanobody fusion protein (vGFP) as a scaffold yielded a construct with a melting temperature of 80°C. This was further increased to 85°C when a thermostable PETase variant (FAST PETase) was scaffolded into vGFP, the highest reported so far for an engineered PET hydrolase derived from IsPETase. Thermostability enhancement using the vGFP scaffold did not compromise activity on PET compared to IsPETase. These contrasting results highlight potential topological and dynamic constraints imposed by scaffold choice as determinants of enzyme activity. 相似文献
124.
Alison Ke Evaristo Cedeño Jordan Karubian Luis Carrasco Fernando Castillo Nelson Gonzales Daniel S. Karp 《Biotropica》2023,55(5):1045-1057
Most studies comparing biodiversity between natural and human-modified landscapes focus on patterns in species occurrence or abundance, but do not consider how different habitat types meet species' breeding requirements. Organisms that use or nest in tree cavities may be especially threatened by habitat conversion due to the loss of their nesting sites. Although cavity-nesting bird diversity is highest in the tropics, little is known about how tropical birds use cavities, how agriculture affects their reproductive biology, and how effective nest boxes could be as a conservation strategy in tropical agriculture. Here, we explored how habitat conversion from tropical forests to pasture affects the abundance, nesting habitat availability, and nest success of cavity-nesting birds in Northwest Ecuador. We conducted bird surveys and measured natural cavity availability and use in forest and agriculture. We also added artificial nest boxes to forest and agriculture to see whether cavity limitation in agriculture would elicit higher use of artificial nest boxes. We found evidence of cavity limitation in agriculture—there were many more natural cavities in forest than in agriculture, as well as more avian use of nest boxes placed in agriculture as compared to forest. Our results suggest that it is important to retain remnant trees in tropical agriculture to provide critical nesting habitat for birds. In addition, adding nest boxes to tropical agricultural systems could be a good conservation strategy for certain species, including insectivores that could provide pest-control services to farmers. Abstract in Spanish is available with online material. 相似文献
125.
Yu-Miao Yang Ying Zhu Minha Naseer Qi Wang Guang Li Hong-Yan Tao Shuang-Guo Zhu Bao-Zhong Wang Wei Wang You-Cai Xiong 《Plant, cell & environment》2023,46(1):251-267
Rhizosphere effect of nanoscale zero-valent iron (nZVI) is crucial but little reported. Maize seeds were dressed with four nZVI concentrations (0, 1.0, 1.5, 2 g kg−1) and inoculated with arbuscular mycorrhizal fungus (AMF) (Funneliformis mosseae). The SEM images illuminated that excessive nZVI particles (2 g kg−1) were agglomerated on the surface of hyphae and spore, causing severe deformation and inactivation of AMF symbionts and thereafter inhibiting water uptake in maize seedlings. This restrained the scavenging effects of enzymatic (superoxide dismutase, peroxidase) and non-enzymatic compounds (proline & malondialdehyde) on ROS, and leaf photoreduction activity and gas exchange ability (p < 0.05). Interestingly, the inoculation with AMF effectively alleviated above negative effects. In contrast, appropriate dose of nZVI, that is, ≤1.5 g kg−1, can be evenly distributed on the hyphae surface and form the ordered symbionts with AMF. This help massively to enhance hyphae growth and water and nutrient uptake. The enhanced mycorrhizal infection turned to promote rhizosphere symbiont activity and leaf Rubisco and Rubisco activase activity. Light compensation point was massively lowered, which increased photosynthetic carbon supply for AMF symbionts. Particularly, such priming effects were evidently enhanced by drought stress. Our findings provided a novel insight into functional role of nZVI in agriculture and AMF-led green production. 相似文献
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【背景】在农田生态系统中,土壤微生物与植物互作的机制仍不清楚。【目的】进一步加强对植物-微生物互作的认识,筛选出引起不同反馈作用的关键微生物或微生物类群。【方法】采集豆科绿肥救荒野豌豆(Vicia sativa, V)、十字花科绿肥油菜(Brassica napus, N)和荒坡土壤(remnant prairie, R)驯化的田块土壤0-20 cm作为菌剂在温室进行植物-土壤反馈(plant-soil feedback,PSF)试验。土壤菌剂的接种量为10%,即有90%理化性质一致的灭菌土壤作为背景土,同时设置灭菌土壤菌剂作为对照(CK),种植玉米。每组土壤菌剂处理均分为50 mg/kg高磷(high phosphorus,HP)和5 mg/kg低磷(low phosphorus, LP)两个磷浓度处理。玉米收获后,测定产量和植株地上部磷含量,并取土壤样品进行高通量测序,解析不同养分供给情况下微生物对作物生长的反馈效应。【结果】高磷和土壤反馈效应均促进了玉米的生长。在低磷水平下,V、N和R处理的玉米地上部生物量均高于CK处理,但N处理的玉米地上部生物量增加最多(38%),且增幅显著高... 相似文献
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129.
台湾山柚属(山柚子科)的一个新组合 总被引:1,自引:0,他引:1
木文是对《甜菜树属(中国山柚子科新记录属)一新种》(载“云南植物研究”1989年11卷4期)一文的修订。将误定于甜菜树属(Mlelientha Pierre)下的长蕊甜菜树(M.longi-staminea)改隶于台湾山柚属(Champereia Griff.),重新组合为四数台湾山柚(Champereia)longistaminea。如果将长蕊甜菜树(Melientha longistaminea)置于甜菜树属(Melientha)中,则混淆了台湾山柚属(Champereia Pierre)与甜菜树属(Melientha Pierre)的区别界线。 相似文献
130.
为探索贵州苗药光枝勾儿茶内生真菌类群特征、分布部位及其抑菌活性,该研究采用传统方法对贵州省贵阳市和黔西市光枝勾儿茶内生真菌进行分离,并基于分子生物学及统计学对其分类地位进行鉴定及多样性评价,最后通过微量肉汤倍比稀释法筛选具有抑菌活性的菌株。结果表明:(1)从光枝勾儿茶中分离到191 株内生真菌,隶属于3 个门5 个纲10 个目15 个科19 个属,优势属为叶点霉属(Phyllosticta)、间座壳属(Diaporthe)、葡萄座腔菌属(Botryosphaeria)和刺盘孢属(Colletotrichum)。(2)黔西光枝勾儿茶内生真菌香农-维纳多样性指数(H''Q=2.112)较贵阳(H''G=1.801)高,索伦森相似性指数CsG-Q为0.923,不同组织香农-维纳多样性指数为茎(H''S=2.004)>根(H''R=1.764)>叶(H''L=1.654)>果实(H''F=1.473),茎和叶内生真菌的索伦森相似性最高(CsS-L=0.667)。(3)筛选出的21株内生真菌对供试菌大肠杆菌(Escherichia coli)、金黄色葡萄球菌(Staphylococcus aureus)和沙门氏菌(Salmonella enterica)具有抑菌效果,其中Diaporthe sp. QX4G6对大肠杆菌、金黄色葡萄球菌和沙门氏菌的最小抑菌浓度分别为12.5、6.25、12.5 mg·mL-1,最小杀菌浓度分别为12.5、6.25、12.5 mg·mL-1。以上研究结果揭示了光枝勾儿茶蕴藏丰富的内生真菌资源,不同地区及组织内生真菌类群组成有差异,多个分离菌株具有抗菌活性,为光枝勾儿茶内生真菌天然抗菌药物或药源研发奠定了基础。 相似文献