共查询到13条相似文献,搜索用时 328 毫秒
1.
2.
香菇‘申香1644’是以传统优质栽培品种‘申香215’为亲本,采用多孢自交育种技术选育的新品种。其菌盖纵切面呈凸形,菌盖直径(6.15±0.38) cm,菌盖厚度(2.27±0.42) cm,菇型圆整,菇质紧实,产量高,生物学转化率95%以上。与亲本相比,‘申香1644’在分子标记和栽培性状上均具有明显差异性,其菌盖为浅黄褐色,颜色较亲本浅;菌龄100-105 d,较亲本缩短5-10 d。‘申香1644’菌丝生长适宜温度为22-26 ℃,原基发育适宜温度为16-22 ℃,可在全国范围内进行代料栽培。 相似文献
3.
4.
5.
双孢蘑菇‘福蘑58'是W2000单孢分离筛选的新品种。菌落形态为贴生型,菌丝在10-32℃下均能生长,最适生长温度24-28℃。结菇温度10-22℃,最适结菇温度14-20℃。子实体单生为主,丛生少,较结实,不易开伞,菌盖扁半球形,表面光滑,颜色较白,直径3.5-5.0cm,高度2.4-2.8cm。在适宜栽培条件下,平均单产比亲本菌株W2000提高10%-15%,鲜菇质量与W2000相当,比W192提升明显,成品菇比例较高,品质优良,适合鲜销市场及罐头加工。该品种可用于周年工厂化、设施化及季节性农法栽培。 相似文献
6.
7.
8.
9.
10.
11.
银耳‘绣银1号’由福建省安溪县采集的野生银耳(TWW01-AX)经多次分离纯化和反复驯化系统选育而成。适合袋栽、瓶栽和段木栽培,银耳菌丝白色或淡黄色,具有锁状联合,子实体由多片波浪状卷曲的耳片组成绣球状或菊花状,耳片边缘呈锯齿状,不规则;新鲜银耳呈淡黄色、半透明。栽培周期约为43 d,鲜耳平均直径13.4 cm,厚度7.0 cm,干耳平均产量81.9 g/袋,相比于主栽品种,总糖含量高,耳心硬度部分小,子实体隆起度高,适应性广,稳定性强,有良好的生产应用价值。 相似文献
12.
13.
Jaejong Noh Jeong Man Kim Sameena Sheikh So Geun Lee Jeong Hyeon Lim Moon Ho Seong Gi Tai Jung 《Physiology and Molecular Biology of Plants》2013,19(4):509-514
The present experiment was aimed to study the effect of imposing modulated temperature treatments 14 °C and 18 °C, around the fruiting region of watermelon plants, and to estimate the economic feasibility of the temperature treatments based on energy consumption for heating. Watermelon cultivar ‘Sambok-gul’ was selected and sown on perlite beds in a plastic house under controlled conditions at Watermelon Farm, Jeongeup-Jeonbuk, longitude 35° 31′ 47.51N, 126° 48′48.84E, altitude 37 m during the early spring season (2010–2011). The findings revealed that the temperature treatment at 18 °C caused significant increase in weight (2.0 kg plant−1), fruit weight (8.3 kg plant−1), soluble solid content (11.5 %), and fruit set rate (96.5 %) at harvest stage. Higher contents of Ca2+ and Mg2+ ions were observed in the 1st upper leaf of the fruit set node (79.3 mg L−1) and the 1st lower leaf of the fruit set node (12.0 mg L−1), respectively at 14 °C. The power consumption and extra costs of the temperature treatment 18 °C were suggested as affordable and in range of a farmer’s budget (41.14 USD/22 days). Hence, it was concluded that modulating temperature treatments could be utilized successfully to optimize the temperature range for enhancing the fruit yield and quality in the winter watermelon crops. 相似文献