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元江干热河谷木棉蒴果形成和纤维发育过程

赵高卷,葛娈,马焕成**,杨建军,黄冬,平盼   

  1. (西南林业大学国家林业局西南地区生物多样性保育重点实验室, 昆明 650224)
  • 出版日期:2014-12-18 发布日期:2014-12-18

Kapok capsule formation and fiber development process in Yuanjiang dryhot valley.

ZHAO Gao-juan, GE Luan, MA Huan-cheng, YANG Jian-jun, HUANG Dong, PING Pan   

  1. (State Forestry Administration Key Laboratory for Biodiversity Conservation in Southwest of China, Southwest Forestry University, Kunming 650224, China)
  • Online:2014-12-18 Published:2014-12-18

摘要: 采取石蜡切片和扫描电子显微镜等方法研究了元江干热河谷木棉蒴果形成和纤维发育过程.结果表明: 木棉蒴果形成过程分为4个阶段: 花后0~5 d为形成期(FS),5~35 d为质量增加期(MGS),35~50 d为缓慢生长或脱水期(DS),50 d以后为成熟爆裂期(BS).与木棉蒴果形成过程相对应的纤维发育过程为:果皮内壁细胞分化(花后0~2 d)、膨大(花后2~5 d)、突起(花后5~10 d)、纤维伸长(花后10~40 d)、纤维脱离内壁及脱水成熟(花后40~50 d).在纤维发育过程中,纤维长度和投影宽度均呈幂函数曲线增长,花后第20天日均增长率达到最大.纤维鲜质量呈先增加后下降的趋势,花后25~30 d日均鲜质量增长率达到最高,而纤维干质量呈逐渐增长趋势,且花后20~25 d纤维干质量日均增长率达到最高.花后第30天,木棉种子和纤维质量继续增加,而果皮呈现下降趋势,表明果皮开始脱水老化.木棉纤维在蒴果壳体内壁的附着力小,较棉花等种子纤维更容易分离.花后5~35 d是蒴果生长和纤维发育最关键的时期,需做好水肥管理;而花后50 d后果实开始爆裂,需做好采收准备.

Abstract: This study explored the capsule formation and fiber development process of kapok which is a tree in Yuanjiang dry-hot valleys (DHV) using the methods of paraffin section and scanning electron microscopy. The result showed that formation process of kapok capsule can be divided into four stages: the capsule formation within 5 days after anthesis (DAA), the capsule mass period from 5 to 35 DAA, the capsule dehydration period from 35 to 50 DAA, and the capsule bursting period after 50 DAA. The kapok fiber was developed via endocarp cells differentiation (0-2 DAA), swelling (2-5 DAA), bulging (5-10 DAA), fiber elongating (10-40 DAA), and divorcing from pericarp (40-50 DAA). During the development, the length and projection width of fiber increased as a power function, and their daily average growth rates reached the maximums at 20 DAA. Fiber fresh mass substantially increased and then reduced, and the daily average growth rate reached the maximum in the period from 25 to 30 DAA. Fiber dry mass gradually increased and reached the maximum growth rate in the period from 20 to 25 DAA. The seed and fiber continually increased their mass after 30 DAA, but the pericarp mass declined with its dehydration and aging. Compared with cotton, it was easy to separate fiber from kapok capsule inner wall because of small adhesion power between kapok fiber and capsule inner wall. The period from 5 to 35 DAA was critical for the fiber development and growth. Therefore, water and fertilizer management should be concentrated at this stage. The capsule should be harvested at 50 DAA because the fiber began to divorce from the pericarp.